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Our group aims to simulate how stars and planets form and how black holes accrete. I am offering PhD projects in all areas of accretion physics. Possible PhD projects in star and planet formation
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I am interested in the most catastrophic and explosive collisions in the Universe, such as the mergers of neutron stars and black holes. I study these using both gravitational waves and
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I am an experimental particle physicist and I specialise in the study of particles containing the beauty and charm quarks. My research aims to help improve our understanding our universe by
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My area of expertise is condensed matter theory. I am interested in the interplay between interactions and unconventional electronic properties of novel materials including graphene, topological
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-dimensional materials. I am interested in creating a low-power topological transistor, in which an electric field can switch a material from a conventional insulator (“off”) to a topological insulator (“on
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I am interested in all aspects of theoretical astrophysics, with a particular focus on strong gravitational fields, compact objects, and gravitational-wave astronomy. I am currently exploring
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temperature profiles" "Generating synthetic observations of warped discs from 1D simulations" I am also open to co-supervision with other members of the department. web page For further details or alternative
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My research focuses on strongly interacting quantum systems at the interface between condensed matter physics and ultracold atomic gases. In particular, I am interested in the interplay between few
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My research connects stars, dust, and gas, with the goal of building a unified multidimensional picture of the Milky Way and nearby galaxies. I am particularly interested in the lifecycle of matter
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combination of multi-wavelength observational data with sophisticated simulations. I am a member of various collaborations, including Australia's OzGrav Centre of Excellence for Gravitational-wave Discovery